The measuring instrument of primitive physics problem for junior high school students: Compilation and Research

Hongjun Xing, Wen Gong, Peng-Cheng Wang, Yanfang Zhai, Yuping Zhao
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Abstract

Problem representation in specific domains has raised great attention in the past years. In mainland China, research of the primitive physics problem teaching has been booming in the physics education domain recently. This study proposes six representations in the process of solving problems for middle school students, including abstraction representation, assignment representation, image representation, physics representation, methodology representation and mathematics representation. The measuring instrument of primitive physics problem for junior high school students was developed according to previous research and the principle of “Objectively Evaluating Subjective Questions”. The participants were 113 grade nine students in mainland China. The results of confirmatory factor analysis confirm the effectiveness of the measuring instrument. A weak correlation between the measuring instrument of primitive physics problems and Lawson Classroom Test of Scientific Reasoning (LCTSR) was found. Therefore, we believe that the primitive physics problem solving ability is a unique ability which is different from the general reasoning ability. This study demonstrates that using the measuring instrument of primitive physics problem to measure junior high school students’ ability of problem solving is promising.
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初中学生原始物理题测量仪器的编制与研究
在过去的几年里,特定领域的问题表示引起了人们的极大关注。在中国大陆,对原始物理问题教学的研究近年来在物理教育领域蓬勃发展。本研究提出中学生解题过程中的六种表征,包括抽象表征、作业表征、形象表征、物理表征、方法表征和数学表征。初中学生原始物理问题测量工具是在前人研究的基础上,根据“客观评价主观问题”的原则开发的。参与者是中国大陆的113名九年级学生。验证性因子分析的结果证实了测量仪器的有效性。原始物理问题测量仪器与劳森课堂科学推理测验之间存在弱相关。因此,我们认为原始物理解题能力是一种不同于一般推理能力的独特能力。本研究表明,使用原始物理问题的测量工具来测量初中生的问题解决能力是有前景的。
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